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An effect of the tubular baffles configuration in an agitated vessel with a high-speed impeller on the power consumption

机译:带有高速叶轮的搅拌式容器中管状挡板结构对功耗的影响

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摘要

The results of the power consumption for an agitated vessel equipped with vertical tubular baffles and high-speed impeller are presented in the paper. Aqueous solutions of CMC were agitated within transitional range of the non-Newtonian liquid flow in the agitated vessel of inner diameter equal to 0.6 m. Eight different types of the impellers were tested: Rushton or Smith turbines, turbine with straight blades, pitched blade turbines and propeller. The J tubular baffles of outer diameter B were located in the position e from the vessel wall. Different configurations of baffles, arranged around the vessel circumference singularly or blocked in the modules, were considered in the study. In total, 180 different tubular baffles–impeller systems were tested. The measurements of the torque were conducted by means of the strain gauges method. Based on the power characteristics obtained for each impeller type, the effect of the geometrical parameters of the vertical tubular baffles on the power number was determined and discussed. The results show that geometry of the tubular baffles mostly affects the power number for the system with radial flow Rushton turbine. Moreover, power numbers decrease with the increase of the clearance between baffle and vessel wall for the systems, in which the radially axial circulation of the liquid is promoted. The dependences of the power number on the geometrical parameters of the vertical tubular baffles arranged singularly around the vessel circumference were described by means of the Eqs. (5)–(16). These equations can be useful in the project computations.
机译:本文介绍了配备垂直管状挡板和高速叶轮的搅拌容器的功耗结果。在内径等于0.6 m的搅拌容器中,在非牛顿液体流动的过渡范围内搅拌CMC的水溶液。测试了八种不同类型的叶轮:Rushton或Smith涡轮,直叶片涡轮,斜叶片涡轮和螺旋桨。外径为B的J个管状挡板位于容器壁的位置e。在研究中考虑了不同形状的折流板,这些折流板围绕容器圆周单独布置或在模块中阻塞。总共测试了180种不同的管状挡板-叶轮系统。扭矩的测量通过应变仪方法进行。根据每种叶轮类型获得的功率特性,确定并讨论了垂直管状挡板的几何参数对功率数的影响。结果表明,管状挡板的几何形状主要影响径向流Rushton涡轮机系统的功率数。此外,对于系统而言,功率数随着挡板和容器壁之间的间隙的增加而减小,在该系统中,促进了液体的径向轴向循环。通过等式描述了功率数对围绕容器圆周单个布置的垂直管状挡板的几何参数的依赖性。 (5)–(16)。这些方程在项目计算中可能很有用。

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